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    • 35. 发明授权
    • Process and device for cooling in containers
    • 容器冷却的工艺和装置
    • US4614091A
    • 1986-09-30
    • US733571
    • 1985-05-13
    • Martin FrankKlaus Plassmeier
    • Martin FrankKlaus Plassmeier
    • F25D3/12
    • F25D3/125
    • Process and Device for heat removal from the effective area of a cooling container with the application of dry-ice as cooling agent, where a refrigerant (e.g. FREON) is circulated in a closed pipe system.According to the construction and degree of charge the gravity cooling system (thermosyphon) or evaporation principle with natural circulation is used to take up the heat from interior space and to supply it to dry-ice as heat of sublimation.The systems of heat transfer are arranged in such a way that even for the inclined cooling container, e.g. at the time of aircraft take-off, at least half of the diagonally arranged heat transfer systems in the interior part are fully active to provide sufficient cooling.
    • 使用干冰作为冷却剂从冷却容器的有效区域除热的方法和装置,其中制冷剂(例如FREON)在密闭管道系统中循环。 根据建设和使用费用,重力冷却系统(热虹吸管)或具有自然循环的蒸发原理用于吸收内部空间的热量,并将其作为升华热量提供给干冰。 传热系统以这样的方式排列,使得即使对于倾斜的冷却容器也是如此。 在飞机起飞时,内部部分的至少一半对角排列的传热系统是完全活动的,以提供足够的冷却。
    • 36. 发明授权
    • Control valve, in particular angle control valve and double control valve, also in the form of a straight-seat valve and inclined-seat valve for extreme control applications
    • 控制阀,特别是角度控制阀和双重控制阀,也是直立阀和倾斜座阀的形式,用于极限控制应用
    • US08807165B2
    • 2014-08-19
    • US13394155
    • 2011-06-06
    • Martin Frank
    • Martin Frank
    • F16K25/00F16K25/04F16K11/10F16K11/20
    • F16K25/04F16K25/005Y10T137/87265Y10T137/87298
    • The invention relates to a control valve, in particular an angle control valve and double control valve, for extreme control applications, preferably for discharge or reduction for hot separators and vacuum distillation columns. The valve piston and the valve head are designed as one piece and consist of tungsten carbide. Furthermore, the control valve comprises different constructions across the entire control valve range. For example, the valve housing, the valve seat and a packing retainer are optionally shaped such that the inner hollow space tapers continuously from the valve inlet to the valve seat, which prevents evaporation upstream of the valve seat. Furthermore, the double control valve consists of a large sub-valve and at least one small sub-valve, wherein the large sub-valve is designed as an adjustable open-closed piston valve and the small sub-valve is designed as a control valve.
    • 本发明涉及用于极端控制应用的控制阀,特别是角度控制阀和双重控制阀,优选用于热分离器和真空蒸馏塔的排放或还原。 阀门活塞和阀头设计为一体,由碳化钨组成。 此外,控制阀在整个控制阀范围内包括不同的结构。 例如,阀壳体,阀座和填料保持器可选地成形为使得内部中空空间从阀入口到阀座连续地逐渐变细,这防止了阀座上游的蒸发。 此外,双重控制阀由大型副阀和至少一个小型副阀组成,其中大型副阀被设计为可调开式活塞阀,小型阀被设计为控制阀 。
    • 37. 发明申请
    • Control Valve, in Particular Angle Control Valve and Double Control Valve, also in the Form of a Straight-Seat Valve and Inclined-Seat Valve for Extreme Control Applications
    • 特殊角度控制阀和双重控制阀中的控制阀,也可用于极直控制阀和倾斜座阀,用于极限控制应用
    • US20120161054A1
    • 2012-06-28
    • US13394155
    • 2011-06-06
    • Martin Frank
    • Martin Frank
    • F16K1/34
    • F16K25/04F16K25/005Y10T137/87265Y10T137/87298
    • The invention relates to a control valve (1), in particular an angle control valve and double control valve, for extreme control applications, preferably for discharge or reduction for hot separators and vacuum distillation columns. The valve piston (12) and the valve head (13) are designed as one piece and consist of tungsten carbide. Furthermore, the control valve comprises different constructions across the entire control valve range. For example, the valve housing (100), the valve seat (6) and a packing retainer (14) are optionally shaped such that the inner hollow space tapers continuously from the valve inlet to the valve seat (6), which prevents evaporation upstream of the valve seat (6). Furthermore, the double control valve consists of a large sub-valve (36) and at least one small sub-valve (37), wherein the large sub-valve (36) is designed as an adjustable open-closed piston valve and the small sub-valve (37) is designed as a control valve.
    • 本发明涉及用于极端控制应用的控制阀(1),特别是角度控制阀和双重控制阀,优选用于热分离器和真空蒸馏塔的排放或还原。 阀活塞(12)和阀头(13)被设计为一体并由碳化钨组成。 此外,控制阀在整个控制阀范围内包括不同的结构。 例如,阀壳体(100),阀座(6)和密封件保持器(14)可选地成形为使得内部中空空间从阀入口到阀座(6)连续地渐缩,这防止蒸发上游 的阀座(6)。 此外,双重控制阀由大型副阀(36)和至少一个小型副阀(37)组成,其中大型副阀(36)被设计为可调开式活塞阀,小型阀 副阀(37)被设计为控制阀。
    • 38. 发明授权
    • Flap configuration
    • 挡板配置
    • US07984942B2
    • 2011-07-26
    • US12337827
    • 2008-12-18
    • Walter SchaupensteinerWerner MaierMartin Frank
    • Walter SchaupensteinerWerner MaierMartin Frank
    • B60R7/06E05C1/06
    • E05B83/30Y10T292/0836
    • A flap configuration has a flap for closing a receptacle and a closing slide guided displaceably parallel to the flap plane in the closing slide guide. The closing slide is inserted with one end into a latching opening in a wall and brought out of engagement with the latching opening by a closing slide drive against a spring force by way of a latch element guided in the latching opening. In an opposite receptacle wall from the latching opening, a guide opening is positioned coaxially with the latching opening and the closing slide guide. In the latching opening, a closing latch biased in the direction of the closing slide is guided, and engages, when the flap is latched in place, in an open end of the closing slide guide. The closing slide drive unlatches the flap.
    • 翼片构造具有用于闭合容器的翼片和在闭合滑动导轨中平行于翼片平面可移动地引导的关闭滑块。 闭合滑块的一端插入壁中的闩锁开口中,并且通过在锁定开口中引导的闩锁元件抵抗弹簧力而通过关闭滑动驱动而与闩锁开口脱离接合。 在与闩锁开口相对的插座壁中,引导开口与锁定开口和闭合滑动导轨同轴地定位。 在闩锁开口中,沿着关闭滑块的方向偏置的闭合闩锁被引导,并且当挡板被锁定就位时,闭合闩锁在闭合滑动引导件的开口端中接合。 关闭滑动驱动器使皮瓣松开。
    • 40. 发明申请
    • TEST ELEMENT FOR ANALYZING BODY FLUIDS
    • 用于分析体液的测试元件
    • US20100278693A1
    • 2010-11-04
    • US12815751
    • 2010-06-15
    • Branislav BabicMartin FrankHans-Ludwig GriesheimerJuergen HofererRudolf PachlWilfried Schmid
    • Branislav BabicMartin FrankHans-Ludwig GriesheimerJuergen HofererRudolf PachlWilfried Schmid
    • G01N33/48B23P17/00
    • B01L3/5023B01L2200/141B01L2300/0825G01N33/558Y10T29/49982Y10T436/144444
    • An analytical test element for determining an analyte in a body fluid comprises a detection area in which the analyte is detected and an application site at which the body fluid can be applied to the test element. The application site is spaced apart from the detection area, wherein at least some of the body fluid applied to the application site moves from the application site to the detection area. The test element also comprises a contamination area which at least partially adjoins the application site, wherein an adhesive substance is applied to at least part of the contamination area of the test element. The adhesive substance adheres to the contamination area of the test element and is able to interact with an excess amount of applied body fluid such that at least some of the body fluid adheres to the test element and thereby an excess amount of body fluid remains in the contamination area. An additional embodiment provides for test elements which, after use, can be stored in a storage container. Another embodiment provides for the production of the test elements.
    • 用于确定体液中的分析物的分析测试元件包括检测分析物的检测区域和可以将体液施加到测试元件的施加位置。 应用场所与检测区域间隔开,其中施加到应用场所的体液中的至少一些从应用位置移动到检测区域。 测试元件还包括至少部分地邻接施加部位的污染区域,其中将粘合物质施加到测试元件的污染区域的至少一部分。 粘合剂物质粘附到测试元件的污染区域,并能够与过量的施用的体液相互作用,使得至少一些体液粘附在测试元件上,从而过量的体液残留在 污染区域。 另外的实施例提供了在使用后可以将其存储在存储容器中的测试元件。 另一实施例提供测试元件的生产。